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首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Identifying safety indicators for safety performance measurement using a system engineering approach
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Identifying safety indicators for safety performance measurement using a system engineering approach

机译:使用系统工程方法识别安全性能测量的安全指示

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摘要

The paper presents a method for the development of safety indicators for a process industry application based on a system engineering perspective. Traditional approaches use probabilistic risk assessment or linear accident models which assume that accidents are linear chains of events and do not consider complex systemic factors and interactions. After BP's Texas City refinery incident, the investigation committee reported that BP had a false sense of safety performance due to providing more focus on managing personal safety rather than process safety. System engineering concepts may help the process industry to operate their activities without any severe accidents by establishing a better safety management system. This paper adopts the STAMP (System-Theoretic Accident Model and Processes) accident causation model to identify system specific indicators and also describes the proposed method with the help of a simple process industry application which is an LNG ship to ship transfer process. It compares the developed method with other methods for practical case applications. The first step of the present method is to establish the safety control structure, then safety performance indicators are identified. Further work is necessary to investigate to what degree these STAMP based indicators are complementary to indicators developed by other methods. (C) 2019 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:本文提出了一种基于系统工程视角的过程行业应用的安全指标的方法。传统方法使用概率风险评估或线性意外模型,这假设事故是事件的线性链,不考虑复杂的系统因素和相互作用。在BP的德克萨斯城炼油厂事件之后,调查委员会报告称,由于提供了更加注重管理人身安全而不是流程安全,因此BP具有虚假的安全性能。系统工程概念可以通过建立更好的安全管理系统,帮助工艺行业在没有任何严重事故的情况下运营他们的活动。本文采用印章(系统 - 理论事故模型和流程)事故因果机模型来识别系统特定指标,并在简单的过程行业应用程序的帮助下介绍了该方法,这是一个液化天然气船舶转移过程。它将开发方法与其他方法进行了比较了实用案例应用。本方法的第一步是建立安全控制结构,然后识别安全性能指标。进一步的工作是调查这些印花基础的指标与其他方法开发的指标的互补程度。 (c)2019化学工程师机构。 elsevier b.v出版。保留所有权利。

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